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https://github.com/mangosfour/server.git
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(based on zergtmn's repo commit 3a8c259) (based on zergtmn's repo commit 946c1a8) Signed-off-by: VladimirMangos <vladimir@getmangos.com>
484 lines
14 KiB
C++
484 lines
14 KiB
C++
// -*- C++ -*-
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//
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// $Id: OS_NS_time.inl 91683 2010-09-09 09:07:49Z johnnyw $
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#include "ace/OS_NS_string.h"
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#include "ace/OS_NS_errno.h"
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#include "ace/Time_Value.h"
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#include "ace/OS_NS_unistd.h"
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#include "ace/OS_NS_sys_time.h"
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ACE_BEGIN_VERSIONED_NAMESPACE_DECL
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ACE_INLINE char *
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ACE_OS::asctime (const struct tm *t)
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{
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ACE_OS_TRACE ("ACE_OS::asctime");
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#if defined (ACE_LACKS_ASCTIME)
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ACE_UNUSED_ARG (t);
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ACE_NOTSUP_RETURN (0);
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#else
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ACE_OSCALL_RETURN (ACE_STD_NAMESPACE::asctime (t), char *, 0);
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#endif /* ACE_LACKS_ASCTIME */
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}
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ACE_INLINE char *
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ACE_OS::asctime_r (const struct tm *t, char *buf, int buflen)
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{
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ACE_OS_TRACE ("ACE_OS::asctime_r");
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#if defined (ACE_HAS_REENTRANT_FUNCTIONS)
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# if defined (ACE_HAS_2_PARAM_ASCTIME_R_AND_CTIME_R)
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char *result = 0;
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ACE_OSCALL (::asctime_r (t, buf), char *, 0, result);
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ACE_OS::strsncpy (buf, result, buflen);
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return buf;
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# else
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# if defined (ACE_HAS_SIZET_PTR_ASCTIME_R_AND_CTIME_R)
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ACE_OSCALL_RETURN (::asctime_r (t, buf, reinterpret_cast<size_t*>(&buflen)), char *, 0);
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# else
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ACE_OSCALL_RETURN (::asctime_r (t, buf, buflen), char *, 0);
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# endif /* ACE_HAS_SIZET_PTR_ASCTIME_R_AND_CTIME_R */
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# endif /* ACE_HAS_2_PARAM_ASCTIME_R_AND_CTIME_R */
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#elif defined (ACE_LACKS_ASCTIME_R)
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ACE_UNUSED_ARG (t);
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ACE_UNUSED_ARG (buf);
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ACE_UNUSED_ARG (buflen);
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ACE_NOTSUP_RETURN (0);
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#elif defined (ACE_HAS_TR24731_2005_CRT)
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char *result = buf;
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ACE_SECURECRTCALL (asctime_s (buf, static_cast<size_t> (buflen), t), \
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char*, 0, result);
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return result;
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#else
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char *result = 0;
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ACE_OSCALL (ACE_STD_NAMESPACE::asctime (t), char *, 0, result);
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ACE_OS::strsncpy (buf, result, buflen);
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return buf;
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#endif /* ACE_HAS_REENTRANT_FUNCTIONS */
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}
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ACE_INLINE int
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ACE_OS::clock_gettime (clockid_t clockid, struct timespec *ts)
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{
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ACE_OS_TRACE ("ACE_OS::clock_gettime");
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#if defined (ACE_HAS_CLOCK_GETTIME)
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ACE_OSCALL_RETURN (::clock_gettime (clockid, ts), int, -1);
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#else
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ACE_UNUSED_ARG (clockid);
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ACE_UNUSED_ARG (ts);
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ACE_NOTSUP_RETURN (-1);
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#endif /* ACE_HAS_CLOCK_GETTIME */
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}
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ACE_INLINE int
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ACE_OS::clock_settime (clockid_t clockid, const struct timespec *ts)
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{
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#if defined (ACE_HAS_CLOCK_SETTIME)
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# if defined (ACE_HAS_NONCONST_CLOCK_SETTIME)
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ACE_OSCALL_RETURN (::clock_settime (clockid, const_cast<struct timespec *>(ts)), int, -1);
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# else
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ACE_OSCALL_RETURN (::clock_settime (clockid, ts), int, -1);
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# endif /* ACE_HAS_NONCONST_CLOCK_SETTIME */
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#else
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ACE_UNUSED_ARG (clockid);
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ACE_UNUSED_ARG (ts);
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ACE_NOTSUP_RETURN (-1);
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#endif /* ACE_HAS_CLOCK_SETTIME */
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}
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// Magic number declaration and definition for ctime and ctime_r ()
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static const int ctime_buf_size = 26;
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ACE_INLINE ACE_TCHAR *
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ACE_OS::ctime (const time_t *t)
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{
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ACE_OS_TRACE ("ACE_OS::ctime");
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#if defined (ACE_HAS_WINCE)
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static ACE_TCHAR buf [ctime_buf_size];
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return ACE_OS::ctime_r (t,
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buf,
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ctime_buf_size);
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#elif defined (ACE_WIN32) && defined (ACE_USES_WCHAR)
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ACE_OSCALL_RETURN (::_wctime (t), wchar_t *, 0);
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#else
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# if defined (ACE_USES_WCHAR) /* Not Win32, else it would do the above */
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char *narrow_time;
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ACE_OSCALL (::ctime (t), char *, 0, narrow_time);
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if (narrow_time == 0)
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return 0;
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// ACE_Ascii_To_Wide::convert allocates (via new []) a wchar_t[]. If
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// we've done this before, free the previous one. Yes, this leaves a
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// small memory leak (26 characters) but there's no way around this
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// that I know of. (Steve Huston, 12-Feb-2003).
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static wchar_t *wide_time = 0;
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if (wide_time != 0)
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delete [] wide_time;
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wide_time = ACE_Ascii_To_Wide::convert (narrow_time);
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return wide_time;
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# else
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ACE_OSCALL_RETURN (::ctime (t), char *, 0);
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# endif /* ACE_USES_WCHAR */
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# endif /* ACE_HAS_WINCE */
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}
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#if !defined (ACE_HAS_WINCE) /* CE version in OS.cpp */
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ACE_INLINE ACE_TCHAR *
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ACE_OS::ctime_r (const time_t *t, ACE_TCHAR *buf, int buflen)
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{
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ACE_OS_TRACE ("ACE_OS::ctime_r");
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#if defined (ACE_HAS_REENTRANT_FUNCTIONS)
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char *bufp = 0;
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# if defined (ACE_USES_WCHAR)
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char narrow_buf[ctime_buf_size];
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bufp = narrow_buf;
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# else
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bufp = buf;
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# endif /* ACE_USES_WCHAR */
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if (buflen < ctime_buf_size)
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{
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errno = ERANGE;
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return 0;
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}
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# if defined (ACE_HAS_2_PARAM_ASCTIME_R_AND_CTIME_R)
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ACE_OSCALL (::ctime_r (t, bufp), char *, 0, bufp);
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# else /* ACE_HAS_2_PARAM_ASCTIME_R_AND_CTIME_R */
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# if defined (ACE_HAS_SIZET_PTR_ASCTIME_R_AND_CTIME_R)
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bufp = ::ctime_r (t, bufp, reinterpret_cast<size_t*>(&buflen));
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# else /* ACE_CTIME_R_RETURNS_INT */
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bufp = ::ctime_r (t, bufp, buflen);
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# endif /* ACE_CTIME_R_RETURNS_INT */
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# endif /* ACE_HAS_2_PARAM_ASCTIME_R_AND_CTIME_R */
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if (bufp == 0)
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return 0;
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# if defined (ACE_USES_WCHAR)
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ACE_Ascii_To_Wide wide_buf (bufp);
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ACE_OS_String::strcpy (buf, wide_buf.wchar_rep ());
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return buf;
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# else
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return bufp;
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# endif /* ACE_USES_WCHAR */
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#elif defined (ACE_HAS_TR24731_2005_CRT)
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if (buflen < ctime_buf_size)
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{
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errno = ERANGE;
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return 0;
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}
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ACE_TCHAR *result = buf;
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# if defined (ACE_USES_WCHAR)
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ACE_SECURECRTCALL (_wctime_s (buf, buflen, t), wchar_t *, 0, result);
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# else
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ACE_SECURECRTCALL (ctime_s (buf, buflen, t), char *, 0, result);
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# endif
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return result;
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#else /* ACE_HAS_REENTRANT_FUNCTIONS */
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if (buflen < ctime_buf_size)
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{
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errno = ERANGE;
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return 0;
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}
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ACE_TCHAR *result = 0;
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# if defined (ACE_USES_WCHAR)
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ACE_OSCALL (::_wctime (t), wchar_t *, 0, result);
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# else /* ACE_USES_WCHAR */
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ACE_OSCALL (::ctime (t), char *, 0, result);
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# endif /* ACE_USES_WCHAR */
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if (result != 0)
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ACE_OS::strsncpy (buf, result, buflen);
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return buf;
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#endif /* ACE_HAS_REENTRANT_FUNCTIONS */
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}
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#endif /* !ACE_HAS_WINCE */
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#if !defined (ACE_LACKS_DIFFTIME)
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ACE_INLINE double
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ACE_OS::difftime (time_t t1, time_t t0)
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{
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return ::ace_difftime (t1, t0);
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}
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#endif /* ! ACE_LACKS_DIFFTIME */
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#if defined (ghs) && defined (ACE_HAS_PENTIUM) && !defined (ACE_WIN32)
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extern "C" ACE_hrtime_t ACE_GETHRTIME_NAME ();
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#endif /* ghs && ACE_HAS_PENTIUM */
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ACE_INLINE ACE_hrtime_t
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ACE_OS::gethrtime (const ACE_HRTimer_Op op)
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{
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ACE_OS_TRACE ("ACE_OS::gethrtime");
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#if defined (ACE_HAS_HI_RES_TIMER)
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ACE_UNUSED_ARG (op);
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return ::gethrtime ();
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#elif defined (ACE_HAS_AIX_HI_RES_TIMER)
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ACE_UNUSED_ARG (op);
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timebasestruct_t tb;
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::read_real_time(&tb, TIMEBASE_SZ);
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::time_base_to_time(&tb, TIMEBASE_SZ);
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return ACE_hrtime_t(tb.tb_high) * ACE_ONE_SECOND_IN_NSECS + tb.tb_low;
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#elif defined (ACE_WIN32)
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ACE_UNUSED_ARG(op);
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LARGE_INTEGER freq;
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::QueryPerformanceCounter (&freq);
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# if defined (ACE_LACKS_LONGLONG_T)
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ACE_UINT64 uint64_freq (freq.u.LowPart,
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static_cast<unsigned int> (freq.u.HighPart));
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return uint64_freq;
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# else
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return freq.QuadPart;
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# endif //ACE_LACKS_LONGLONG_T
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#elif defined (ghs) && defined (ACE_HAS_PENTIUM)
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ACE_UNUSED_ARG (op);
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// Use .obj/gethrtime.o, which was compiled with g++.
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return ACE_GETHRTIME_NAME ();
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#elif (defined (__GNUG__) || defined (__INTEL_COMPILER)) && !defined(ACE_VXWORKS) && defined (ACE_HAS_PENTIUM)
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ACE_UNUSED_ARG (op);
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# if defined (ACE_LACKS_LONGLONG_T)
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double now;
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# else /* ! ACE_LACKS_LONGLONG_T */
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ACE_hrtime_t now;
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# endif /* ! ACE_LACKS_LONGLONG_T */
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#if defined (__amd64__) || defined (__x86_64__)
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// Read the high res tick counter into 32 bit int variables "eax" and
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// "edx", and then combine them into 64 bit int "now"
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ACE_UINT32 eax, edx;
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asm volatile ("rdtsc" : "=a" (eax), "=d" (edx) : : "memory");
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now = (((ACE_UINT64) eax) | (((ACE_UINT64) edx) << 32));
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#else
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// Read the high-res tick counter directly into memory variable "now".
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// The A constraint signifies a 64-bit int.
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asm volatile ("rdtsc" : "=A" (now) : : "memory");
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#endif
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# if defined (ACE_LACKS_LONGLONG_T)
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ACE_UINT32 least, most;
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ACE_OS::memcpy (&least, &now, sizeof (ACE_UINT32));
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ACE_OS::memcpy (&most, (u_char *) &now + sizeof (ACE_UINT32),
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sizeof (ACE_UINT32));
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ACE_hrtime_t ret (least, most);
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return ret;
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# else /* ! ACE_LACKS_LONGLONG_T */
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return now;
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# endif /* ! ACE_LACKS_LONGLONG_T */
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#elif defined (linux) && defined (ACE_HAS_ALPHA_TIMER)
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// NOTE: alphas only have a 32 bit tick (cycle) counter. The rpcc
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// instruction actually reads 64 bits, but the high 32 bits are
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// implementation-specific. Linux and Digital Unix, for example,
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// use them for virtual tick counts, i.e., taking into account only
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// the time that the process was running. This information is from
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// David Mosberger's article, see comment below.
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ACE_UINT32 now;
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// The following statement is based on code published by:
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// Mosberger, David, "How to Make Your Applications Fly, Part 1",
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// Linux Journal Issue 42, October 1997, page 50. It reads the
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// high-res tick counter directly into the memory variable.
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asm volatile ("rpcc %0" : "=r" (now) : : "memory");
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return now;
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#elif defined (ACE_HAS_POWERPC_TIMER) && (defined (ghs) || defined (__GNUG__))
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// PowerPC w/ GreenHills or g++.
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ACE_UNUSED_ARG (op);
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u_long most;
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u_long least;
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#if defined (ghs)
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ACE_OS::readPPCTimeBase (most, least);
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#else
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u_long scratch;
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do {
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asm volatile ("mftbu %0\n"
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"mftb %1\n"
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"mftbu %2"
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: "=r" (most), "=r" (least), "=r" (scratch));
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} while (most != scratch);
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#endif
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#if defined (ACE_LACKS_LONGLONG_T)
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return ACE_U_LongLong (least, most);
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#else /* ! ACE_LACKS_LONGLONG_T */
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return 0x100000000llu * most + least;
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#endif /* ! ACE_LACKS_LONGLONG_T */
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#elif defined (ACE_HAS_CLOCK_GETTIME)
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// e.g., VxWorks (besides POWERPC && GreenHills) . . .
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ACE_UNUSED_ARG (op);
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struct timespec ts;
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ACE_OS::clock_gettime (
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#if defined (ACE_HAS_CLOCK_GETTIME_MONOTONIC)
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CLOCK_MONOTONIC,
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#else
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CLOCK_REALTIME,
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#endif /* !ACE_HAS_CLOCK_GETTIME_MONOTONIC */
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&ts);
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// Carefully create the return value to avoid arithmetic overflow
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// if ACE_hrtime_t is ACE_U_LongLong.
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return static_cast<ACE_hrtime_t> (ts.tv_sec) *
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ACE_U_ONE_SECOND_IN_NSECS + static_cast<ACE_hrtime_t> (ts.tv_nsec);
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#else
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ACE_UNUSED_ARG (op);
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ACE_Time_Value const now = ACE_OS::gettimeofday ();
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// Carefully create the return value to avoid arithmetic overflow
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// if ACE_hrtime_t is ACE_U_LongLong.
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return (static_cast<ACE_hrtime_t> (now.sec ()) * (ACE_UINT32) 1000000 +
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static_cast<ACE_hrtime_t> (now.usec ())) * (ACE_UINT32) 1000;
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#endif /* ACE_HAS_HI_RES_TIMER */
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}
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ACE_INLINE struct tm *
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ACE_OS::gmtime (const time_t *t)
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{
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ACE_OS_TRACE ("ACE_OS::gmtime");
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#if defined (ACE_LACKS_GMTIME)
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ACE_UNUSED_ARG (t);
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ACE_NOTSUP_RETURN (0);
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#else
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ACE_OSCALL_RETURN (::gmtime (t), struct tm *, 0);
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#endif /* ACE_LACKS_GMTIME */
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}
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ACE_INLINE struct tm *
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ACE_OS::gmtime_r (const time_t *t, struct tm *res)
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{
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ACE_OS_TRACE ("ACE_OS::gmtime_r");
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#if defined (ACE_HAS_REENTRANT_FUNCTIONS)
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ACE_OSCALL_RETURN (::gmtime_r (t, res), struct tm *, 0);
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#elif defined (ACE_HAS_TR24731_2005_CRT)
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struct tm *tm_p = res;
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ACE_SECURECRTCALL (gmtime_s (res, t), struct tm *, 0, tm_p);
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return tm_p;
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#elif defined (ACE_LACKS_GMTIME_R)
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ACE_UNUSED_ARG (t);
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ACE_UNUSED_ARG (res);
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ACE_NOTSUP_RETURN (0);
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#else
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struct tm *result;
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ACE_OSCALL (::gmtime (t), struct tm *, 0, result) ;
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if (result != 0)
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*res = *result;
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return res;
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#endif /* ACE_HAS_REENTRANT_FUNCTIONS */
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}
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ACE_INLINE struct tm *
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ACE_OS::localtime (const time_t *t)
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{
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ACE_OS_TRACE ("ACE_OS::localtime");
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#if defined (ACE_LACKS_LOCALTIME)
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ACE_UNUSED_ARG (t);
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ACE_NOTSUP_RETURN (0);
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#else
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ACE_OSCALL_RETURN (::localtime (t), struct tm *, 0);
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#endif /* ACE_LACKS_LOCALTIME */
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}
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ACE_INLINE int
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ACE_OS::nanosleep (const struct timespec *requested,
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struct timespec *remaining)
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{
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ACE_OS_TRACE ("ACE_OS::nanosleep");
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#if defined (ACE_HAS_CLOCK_GETTIME)
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// ::nanosleep () is POSIX 1003.1b. So is ::clock_gettime (). So,
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// if ACE_HAS_CLOCK_GETTIME is defined, then ::nanosleep () should
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// be available on the platform. On Solaris 2.x, both functions
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// require linking with -lposix4.
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return ::nanosleep ((ACE_TIMESPEC_PTR) requested, remaining);
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#else
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ACE_UNUSED_ARG (remaining);
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// Convert into seconds and microseconds.
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ACE_Time_Value tv (requested->tv_sec,
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requested->tv_nsec / 1000);
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return ACE_OS::sleep (tv);
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#endif /* ACE_HAS_CLOCK_GETTIME */
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}
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ACE_INLINE size_t
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ACE_OS::strftime (char *s, size_t maxsize, const char *format,
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const struct tm *timeptr)
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{
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#if defined (ACE_LACKS_STRFTIME)
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ACE_UNUSED_ARG (s);
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ACE_UNUSED_ARG (maxsize);
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ACE_UNUSED_ARG (format);
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ACE_UNUSED_ARG (timeptr);
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ACE_NOTSUP_RETURN (0);
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#else
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return ACE_STD_NAMESPACE::strftime (s, maxsize, format, timeptr);
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#endif /* ACE_LACKS_STRFTIME */
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}
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ACE_INLINE char *
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ACE_OS::strptime (const char *buf, const char *format, struct tm *tm)
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{
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ACE_OS::memset (tm, 0, sizeof (struct tm));
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#if defined (ACE_LACKS_STRPTIME)
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return ACE_OS::strptime_emulation (buf, format, tm);
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#else
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return ACE_STD_NAMESPACE::strptime (buf, format, tm);
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#endif /* ACE_LACKS_STRPTIME */
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}
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|
|
|
ACE_INLINE time_t
|
|
ACE_OS::time (time_t *tloc)
|
|
{
|
|
ACE_OS_TRACE ("ACE_OS::time");
|
|
#if defined (ACE_LACKS_TIME)
|
|
time_t const retv = ACE_OS::gettimeofday ().sec ();
|
|
if (tloc)
|
|
*tloc = retv;
|
|
return retv;
|
|
#else
|
|
ACE_OSCALL_RETURN (::time (tloc), time_t, (time_t) -1);
|
|
#endif /* ACE_LACKS_TIME */
|
|
}
|
|
|
|
// Linux won't compile unless we explicitly use a namespace here.
|
|
#if defined (__GNUG__)
|
|
namespace ACE_OS {
|
|
ACE_INLINE long
|
|
timezone (void)
|
|
{
|
|
return ::ace_timezone ();
|
|
}
|
|
} /* namespace ACE_OS */
|
|
#else
|
|
ACE_INLINE long
|
|
ACE_OS::timezone (void)
|
|
{
|
|
return ::ace_timezone ();
|
|
}
|
|
#endif /* linux */
|
|
|
|
ACE_INLINE void
|
|
ACE_OS::tzset (void)
|
|
{
|
|
#if defined (ACE_LACKS_TZSET)
|
|
errno = ENOTSUP;
|
|
#elif defined (ACE_WIN32)
|
|
::_tzset (); // For Win32.
|
|
#else
|
|
::tzset (); // For UNIX platforms.
|
|
#endif /* ACE_LACKS_TZSET */
|
|
}
|
|
|
|
ACE_END_VERSIONED_NAMESPACE_DECL
|